Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration

Anzibar Fialho, Maximiliano - Vázquez Alberdi, Lucía - Martínez, Mariana - Calero, Miguel - Baranger, Jerome - Tanter, Mickael - Damián, Juan Pablo - Negreira, Carlos - Rubido, Nicolás - Kun González, Alejandra E. - Brum, Javier

Resumen:

Ultrafast Doppler (μDoppler) and scanning laser confocal microscopy (SLCM) are powerful imaging modalities that can measure in vivo cerebral blood volume (CBV) and vascular structure, respectively. In the brain, the hippocampus plays an important role in learning and memory, requiring high-neuronal oxygenation. Understanding the relationship between blood flow and vascular structure - and how it changes with aging or neurodegeneration - is physiologically and anatomically relevant. We apply both imaging modalities to a cross-sectional and longitudinal study of hippocampi vasculature in wild-type (Wt) and Trembler-J (TrJ) mice brains, a biological model of Charcot-Marie-Tooth (CMT) neurological syndrome. For aging study, we introduce a segmentation of CBV distribution obtained from μDoppler and show that this mice-independent and mesoscopic measurement is correlated with vessel volume fraction (VVF) distribution obtained from SLCM-e.g., high CBV relates to specific vessel locations with large VVF, in wild-type mice. Moreover, we find significant changes in CBV distribution and vasculature due to aging (5 vs. 21 month-old mice), highlighting the sensitivity of our approach. Overall, we are able to associate CBV with vascular structure - and track its longitudinal changes - at the artery-vein, venules, arteriole, and capillary levels. Under neurodegeneration conditions (Trembler-J mice), the same strategy was applied. Recently, the same strategy was used to understand the vascular component in Trembler-J. μDoppler analysis indicated that the TrJ hippocampus showed hyperperfusion to the Wt mice hippocampus. These preliminary but consistent data open up a different and new perspective to explore vascular components in CMT diseases. We believe that this approach can be a powerful tool for studying other acute (e.g., brain injuries), progressive (e.g., neurodegeneration) or induced pathological changes.


Detalles Bibliográficos
2022
ANII: FCE_1_2019_1_155539
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/38335
Acceso abierto
Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
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author Anzibar Fialho, Maximiliano
author2 Vázquez Alberdi, Lucía
Martínez, Mariana
Calero, Miguel
Baranger, Jerome
Tanter, Mickael
Damián, Juan Pablo
Negreira, Carlos
Rubido, Nicolás
Kun González, Alejandra E.
Brum, Javier
author2_role author
author
author
author
author
author
author
author
author
author
author_facet Anzibar Fialho, Maximiliano
Vázquez Alberdi, Lucía
Martínez, Mariana
Calero, Miguel
Baranger, Jerome
Tanter, Mickael
Damián, Juan Pablo
Negreira, Carlos
Rubido, Nicolás
Kun González, Alejandra E.
Brum, Javier
author_role author
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dc.contributor.filiacion.none.fl_str_mv Anzibar Fialho Maximiliano, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.
Vázquez Alberdi Lucía, IIBCE
Martínez Mariana, IIBCE
Calero Miguel
Baranger Jerome
Tanter Mickael
Damián Juan Pablo, Universidad de la República (Uruguay). Facultad de Veterinaria.
Negreira Carlos, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.
Rubido Nicolás, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.
Kun González Alejandra E., Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.
Brum Javier, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.
dc.creator.none.fl_str_mv Anzibar Fialho, Maximiliano
Vázquez Alberdi, Lucía
Martínez, Mariana
Calero, Miguel
Baranger, Jerome
Tanter, Mickael
Damián, Juan Pablo
Negreira, Carlos
Rubido, Nicolás
Kun González, Alejandra E.
Brum, Javier
dc.date.accessioned.none.fl_str_mv 2023-07-21T17:21:21Z
dc.date.available.none.fl_str_mv 2023-07-21T17:21:21Z
dc.date.issued.none.fl_str_mv 2022
dc.description.abstract.none.fl_txt_mv Ultrafast Doppler (μDoppler) and scanning laser confocal microscopy (SLCM) are powerful imaging modalities that can measure in vivo cerebral blood volume (CBV) and vascular structure, respectively. In the brain, the hippocampus plays an important role in learning and memory, requiring high-neuronal oxygenation. Understanding the relationship between blood flow and vascular structure - and how it changes with aging or neurodegeneration - is physiologically and anatomically relevant. We apply both imaging modalities to a cross-sectional and longitudinal study of hippocampi vasculature in wild-type (Wt) and Trembler-J (TrJ) mice brains, a biological model of Charcot-Marie-Tooth (CMT) neurological syndrome. For aging study, we introduce a segmentation of CBV distribution obtained from μDoppler and show that this mice-independent and mesoscopic measurement is correlated with vessel volume fraction (VVF) distribution obtained from SLCM-e.g., high CBV relates to specific vessel locations with large VVF, in wild-type mice. Moreover, we find significant changes in CBV distribution and vasculature due to aging (5 vs. 21 month-old mice), highlighting the sensitivity of our approach. Overall, we are able to associate CBV with vascular structure - and track its longitudinal changes - at the artery-vein, venules, arteriole, and capillary levels. Under neurodegeneration conditions (Trembler-J mice), the same strategy was applied. Recently, the same strategy was used to understand the vascular component in Trembler-J. μDoppler analysis indicated that the TrJ hippocampus showed hyperperfusion to the Wt mice hippocampus. These preliminary but consistent data open up a different and new perspective to explore vascular components in CMT diseases. We believe that this approach can be a powerful tool for studying other acute (e.g., brain injuries), progressive (e.g., neurodegeneration) or induced pathological changes.
dc.description.sponsorship.none.fl_txt_mv ANII: FCE_1_2019_1_155539
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dc.identifier.citation.es.fl_str_mv Anzibar Fialho, M, Vázquez Alberdi, L, Martínez, M, [y otros autores]. Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration [en línea] EN: XVII Reunión de la Sociedad Uruguaya de Física 2022 - "José A. Ferrari". Colonia, 4-5 de noviembre de 2022. Colonia: Sociedad Uruguaya de Física. 2022. 24 h.
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/38335
dc.language.iso.none.fl_str_mv en
eng
dc.publisher.es.fl_str_mv Sociedad Uruguaya de Física
dc.relation.ispartof.es.fl_str_mv XVII Reunión de la Sociedad Uruguaya de Física 2022 - "José A. Ferrari", Colonia, 4-5 de noviembre de 2022.
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.title.none.fl_str_mv Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
dc.type.es.fl_str_mv Póster
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description Ultrafast Doppler (μDoppler) and scanning laser confocal microscopy (SLCM) are powerful imaging modalities that can measure in vivo cerebral blood volume (CBV) and vascular structure, respectively. In the brain, the hippocampus plays an important role in learning and memory, requiring high-neuronal oxygenation. Understanding the relationship between blood flow and vascular structure - and how it changes with aging or neurodegeneration - is physiologically and anatomically relevant. We apply both imaging modalities to a cross-sectional and longitudinal study of hippocampi vasculature in wild-type (Wt) and Trembler-J (TrJ) mice brains, a biological model of Charcot-Marie-Tooth (CMT) neurological syndrome. For aging study, we introduce a segmentation of CBV distribution obtained from μDoppler and show that this mice-independent and mesoscopic measurement is correlated with vessel volume fraction (VVF) distribution obtained from SLCM-e.g., high CBV relates to specific vessel locations with large VVF, in wild-type mice. Moreover, we find significant changes in CBV distribution and vasculature due to aging (5 vs. 21 month-old mice), highlighting the sensitivity of our approach. Overall, we are able to associate CBV with vascular structure - and track its longitudinal changes - at the artery-vein, venules, arteriole, and capillary levels. Under neurodegeneration conditions (Trembler-J mice), the same strategy was applied. Recently, the same strategy was used to understand the vascular component in Trembler-J. μDoppler analysis indicated that the TrJ hippocampus showed hyperperfusion to the Wt mice hippocampus. These preliminary but consistent data open up a different and new perspective to explore vascular components in CMT diseases. We believe that this approach can be a powerful tool for studying other acute (e.g., brain injuries), progressive (e.g., neurodegeneration) or induced pathological changes.
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identifier_str_mv Anzibar Fialho, M, Vázquez Alberdi, L, Martínez, M, [y otros autores]. Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration [en línea] EN: XVII Reunión de la Sociedad Uruguaya de Física 2022 - "José A. Ferrari". Colonia, 4-5 de noviembre de 2022. Colonia: Sociedad Uruguaya de Física. 2022. 24 h.
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repository.name.fl_str_mv COLIBRI - Universidad de la República
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rights_invalid_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
spelling Anzibar Fialho Maximiliano, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.Vázquez Alberdi Lucía, IIBCEMartínez Mariana, IIBCECalero MiguelBaranger JeromeTanter MickaelDamián Juan Pablo, Universidad de la República (Uruguay). Facultad de Veterinaria.Negreira Carlos, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.Rubido Nicolás, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.Kun González Alejandra E., Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.Brum Javier, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Física.2023-07-21T17:21:21Z2023-07-21T17:21:21Z2022Anzibar Fialho, M, Vázquez Alberdi, L, Martínez, M, [y otros autores]. Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration [en línea] EN: XVII Reunión de la Sociedad Uruguaya de Física 2022 - "José A. Ferrari". Colonia, 4-5 de noviembre de 2022. Colonia: Sociedad Uruguaya de Física. 2022. 24 h.https://hdl.handle.net/20.500.12008/38335Ultrafast Doppler (μDoppler) and scanning laser confocal microscopy (SLCM) are powerful imaging modalities that can measure in vivo cerebral blood volume (CBV) and vascular structure, respectively. In the brain, the hippocampus plays an important role in learning and memory, requiring high-neuronal oxygenation. Understanding the relationship between blood flow and vascular structure - and how it changes with aging or neurodegeneration - is physiologically and anatomically relevant. We apply both imaging modalities to a cross-sectional and longitudinal study of hippocampi vasculature in wild-type (Wt) and Trembler-J (TrJ) mice brains, a biological model of Charcot-Marie-Tooth (CMT) neurological syndrome. For aging study, we introduce a segmentation of CBV distribution obtained from μDoppler and show that this mice-independent and mesoscopic measurement is correlated with vessel volume fraction (VVF) distribution obtained from SLCM-e.g., high CBV relates to specific vessel locations with large VVF, in wild-type mice. Moreover, we find significant changes in CBV distribution and vasculature due to aging (5 vs. 21 month-old mice), highlighting the sensitivity of our approach. Overall, we are able to associate CBV with vascular structure - and track its longitudinal changes - at the artery-vein, venules, arteriole, and capillary levels. Under neurodegeneration conditions (Trembler-J mice), the same strategy was applied. Recently, the same strategy was used to understand the vascular component in Trembler-J. μDoppler analysis indicated that the TrJ hippocampus showed hyperperfusion to the Wt mice hippocampus. These preliminary but consistent data open up a different and new perspective to explore vascular components in CMT diseases. We believe that this approach can be a powerful tool for studying other acute (e.g., brain injuries), progressive (e.g., neurodegeneration) or induced pathological changes.Submitted by Faget Cecilia (lfaget@fcien.edu.uy) on 2023-07-21T17:17:54Z No. of bitstreams: 2 license_rdf: 23149 bytes, checksum: 1996b8461bc290aef6a27d78c67b6b52 (MD5) Poster24-LuciaVazquez.pdf: 1033080 bytes, checksum: 59f0e72eb9681e0e8809639fa94f6296 (MD5)Approved for entry into archive by Faget Cecilia (lfaget@fcien.edu.uy) on 2023-07-21T17:18:19Z (GMT) No. of bitstreams: 2 license_rdf: 23149 bytes, checksum: 1996b8461bc290aef6a27d78c67b6b52 (MD5) Poster24-LuciaVazquez.pdf: 1033080 bytes, checksum: 59f0e72eb9681e0e8809639fa94f6296 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2023-07-21T17:21:21Z (GMT). No. of bitstreams: 2 license_rdf: 23149 bytes, checksum: 1996b8461bc290aef6a27d78c67b6b52 (MD5) Poster24-LuciaVazquez.pdf: 1033080 bytes, checksum: 59f0e72eb9681e0e8809639fa94f6296 (MD5) Previous issue date: 2022ANII: FCE_1_2019_1_1555391 happlication/pdfenengSociedad Uruguaya de FísicaXVII Reunión de la Sociedad Uruguaya de Física 2022 - "José A. Ferrari", Colonia, 4-5 de noviembre de 2022.Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. Nº 16 de C.D.C. de 07/10/2014)info:eu-repo/semantics/openAccessLicencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegenerationPósterinfo:eu-repo/semantics/conferenceObjectinfo:eu-repo/semantics/publishedVersionreponame:COLIBRIinstname:Universidad de la Repúblicainstacron:Universidad de la RepúblicaAnzibar Fialho, MaximilianoVázquez Alberdi, LucíaMartínez, MarianaCalero, MiguelBaranger, JeromeTanter, MickaelDamián, Juan PabloNegreira, CarlosRubido, NicolásKun González, Alejandra E.Brum, JavierLICENSElicense.txtlicense.txttext/plain; charset=utf-84267http://localhost:8080/xmlui/bitstream/20.500.12008/38335/5/license.txt6429389a7df7277b72b7924fdc7d47a9MD55CC-LICENSElicense_urllicense_urltext/plain; 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- Universidad de la Repúblicafalse
spellingShingle Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
Anzibar Fialho, Maximiliano
status_str publishedVersion
title Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
title_full Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
title_fullStr Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
title_full_unstemmed Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
title_short Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
title_sort Intensity distribution segmentation in ultrafast Doppler and scanning laser confocal microscopy for evaluate vascular changes associated with aging and neurodegeneration
url https://hdl.handle.net/20.500.12008/38335